Lithospheric flexure and effective elastic thickness under the Ulleung Basin in the East Sea using gravitational coherence

IF 2.7 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Masume Akbari, Hojjat Kabirzadeh, Chang Hwan Kim, Chan Hong Park, Youn Soo Lee, Jeong Woo Kim
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引用次数: 0

Abstract

To estimate a non-uniform effective elastic thickness (Te) of lithosphere across Korean Peninsula and the Surrounding Seas (KPSS), we employ gravitational coherence analysis between gravity anomalies and topography/bathymetry data in the Fourier domain. Exploring crustal flexure and effective elastic thickness variations can offer insights into flexural strength, and evolutionary mechanics of the lithosphere under Ulleung Basin (UB). Our approach involves two scenarios: a large study area spanning the KPSS, and a more targeted investigation focused on UB. Dividing the study area into overlapping windows enables us to recover non-uniform Te values over the targeted regions. The UB study area is divide to 200 km by 200 km windows, and KPSS is divided to 400 km, 600 km, and 800 km windows to recover both short wavelengths and long wavelengths of Te. Our results reveal a Te range of 843 km for KPSS and recovered Te range from 1 to 10 km for UB. The estimated elastic thickness values in southern part of this basin are smaller compared to central and northern parts. These findings are consistent with prior estimations and comparative studies within the region, improving the understanding of UB's lithospheric properties. The recovered Te values for UB (Te<6km) suggests a young and weak oceanic lithosphere under this region. The alignment between recovered Te configuration and tectonic features in KPSS displays a large-scale lithospheric structure.
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来源期刊
Tectonophysics
Tectonophysics 地学-地球化学与地球物理
CiteScore
4.90
自引率
6.90%
发文量
300
审稿时长
6 months
期刊介绍: The prime focus of Tectonophysics will be high-impact original research and reviews in the fields of kinematics, structure, composition, and dynamics of the solid arth at all scales. Tectonophysics particularly encourages submission of papers based on the integration of a multitude of geophysical, geological, geochemical, geodynamic, and geotectonic methods
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